124 resultados para Aeroespacial


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O objetivo desta tese, "Economia Ecológica da Emissão Antropogênica de CO2 – uma Abordagem Filosófico-Científica sobre a Efetuação Humana Alopoiética da Terra em Escala Planetária utiliza o novo paradigma ambiental, que inclui as seguintes ferramentas teóricas originais: · o uso da filosofia da efetuação de Friedrich Wilhelm Joseph Schelling (1775-1854); · uso da teoria da auto-organização para demonstrar a existência de uma efetuação humana alopoiética de dimensões geológico-planetárias; · a articulação das implicações filosófico-científicas em uma via de recorrência que inclui a contingência, a reprocessualidade, a ética e a hermenêutica, além das abordagens e estratégias da interdisciplinaridade e da transdisicplinaridade; · uma nova estrutura de abordagem empírica para a coleta de dados ambientais, a matriz de amostragem ambiental. Nesta abordagem é proposto o posicionamento da Epistemologia Ambiental levando em conta o aspecto unificador sistêmico, após ser realizada a crítica das abordagens anarquista e pós-normal. A Economia é posta como antiexemplo no qual a Economia tradicional (Clássica, Neoclássica e Ambiental) é caracterizada como uma pseudociência, a partir das suas ilusões, dogmas, mitos, fantasias, falácias, falsa "lei", falsas metáforas e o abandono da ética e da visão sistêmica, sendo suas afirmativas (falsas) comparadas com os resultados das demais ciências e com a situação real do planeta Terra, no início do século XXI. O contraponto da Economia tradicional é estabelecido pela apresentação dos conceitos de ecodesenvolvimento, sustentabilidade, estado-estável, Economia Win-Win e o advento da Era Solar. A Economia Ecológica constitui uma nova Ciência Ambiental, passando atualmente por um processo de corrupção economicista. A apresentação da efetuação humana alopoiética é feita em duas principais escalas: a geológica e planetária. A efetuação humana alopoiética registrada em escala geológica inclui as seguintes formas: paisagística, pedogênica, litológica, geodinâmica (sísmica, vulcânica, hídrica, massiva e erosional), fossilífera e geoquímica. A efetuação humana alopoiética registrada em escala planetária apresenta as seguintes formas: climática, asteróide-meteorítica, da biodiversidade, aeroespacial próxima e extraplanetária. A emissão antropogênica de gás carbônico (CO2) na atmosfera terrestre, uma emissão difusa e sem fronteiras geográficas, é abordada com a Economia Ecológica. A partir da identificação do aquecimento global com "a conta entrópica devida à era da máquina" (Rifkin, 1992, p. 81) que a Natureza apresenta aos seres humanos, é feita a tentativa de estabelecer um valor real do fenômeno, tendo como ferramenta científica a abordagem emergética. A partir da constatação de que a efetuação humana alopoiética registrada até o final do século XX foi realizada de forma imprevista, imprudente e fora de controle e tendo em vista a emergência da Era da Terra-Pátria, no início do século XXI, e a necessidade de reorientar a globalização em curso, alternativas para a busca da efetuação terrestre consciente são apresentadas. As principais alternativas propostas para resolver (ou encaminhar a resolução) para a questão ambiental são as economicistas, da qualidade ambiental total (ISO 14000), as industrialistas (produção limpa, fator 4, fator 10 e capitalismo natural), as científicas (geofisiologia e terraforming), da Economia Ecológica e Economia Win-Win, as políticas (Política da Biosfera e Plano Marshall Global), as éticas, a utopia do reencantamento do Mundo e a proposta programática da Agenda 21. As conclusões e interpretações desta tese provém dos resultados obtidos pelo cálculo da emissão de CO2 para a atmosfera, sua emergia e valor real através de dados obtidos na Internet e da contextualização destes nas propostas existentes para o encaminhamento da questão ambiental. A mitologia de Ícaro na tentativa ambiciosa em se afastar da Natureza e o retorno à ela na forma de uma Fênix de ressurgimento autopoiético, fornece a visão do reenvolvimento ambiental humano.

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O tema parceria vem sendo objeto de estudo em todo o mundo. Ganhando força, com as Joint-venture Internacionais, nas áreas de telecomunicações, informática, automobilística, aeroespacial etc., o elemento inovador passou a ser a constituição de alianças estratégicas com potenciais concorrentes, seja na exploração de novos nichos de mercado, seja em atividades de pesquisa e desenvolvimento de novos serviços e produtos. Considerando como normal esta troca ou sinergia entre parceiros, o trabalho apresenta e analisa os dados relativos ao estudo de campo realizado (pesquisa seletiva) junto a profissionais envolvidos com o dia-a-dia do processo de parceria de empresas líderes dos setores de Telecomunicações (Empresa Estatal) e do setor de serviços de Rede e Informática ( Empresa Privada). As considerações estão estruturadas nas seguintes partes: a caracterização e segmentação da amostra utilizada (caracterização dos respondentes); a análise descritiva e avaliação das variáveis representativas dos fatores inibidores e facilitadores; as percepções diferenciadas face aos elementos dependendo da experiência profissional e grau de envolvimento com os processos da parceria; os elementos inibidores e facilitadores apontados como de maior relevância; e os resultados obtidos a partir do uso da técnica de análise fatorial.

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A necessidade de maior generalização e aplicação do modelo da curva de progresso da produção às indústrias "mão-de-obra intensivas" vem sendo ressaltada há muitos anos na literatura. Até hoje, entretanto, as contribuições empíricas ao estudo da matéria emanaram, predominantemente, da indústria aeroespacial cabendo às demais umas poucas tentativas de extensão do modelo mencionado. A forma apropriada do modelo tem sido também debatida. A questão do platô na curva - término ou estancamento do progresso constitui um problema sobre o qual existe muita controvérsia e quase nenhuma pesquisa empírica. A estimação dos parâmetros da função de progresso da produção, para diferentes produtos e atividades, tem sido tentada por um escasso número de pesquisadores, desconhecendo o auto a existência de pesquisas sobre a função de progresso da produção no caso de indústrias brasileiras. Finalmente, a matéria toda carece de novas hipóteses e de melhor sistematização teórica. Ao ampliar e aprofundar as questões mencionadas, o trabalho teórico e de pesquisa, ora concluído, contribuirá, possivelmente, para esclarecer determinados aspectos da função de progresso da produção, ainda não abordados na literatura especialização.

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Recently, an amazing development has been observed in telecommunication systems. Two good examples of this development are observed in mobile communication and aerospace systems. This impressive development is related to the increasing need for receiving and transmitting communication signals. Particularly, this development has required the study of new antennas and filters. This work presents a fullwave analysis of reflectarrays. The considered structures are composed by arrays of rectangular conducting patches printed on multilayer dieletric substrates, that are mounted on a ground plane. The analysis is developed in the spectral domain, using an equivalent transmission line method in combination with Galerkin method. Results for the reflection coefficient of these structures are presented and compared to those available in the literature. A good agreement was observed. Particularly, the developed analysis uses the transmission lines theory in combination with the incident potentials and the field continuity equations, at the structures interfaces, for obtaining the scattered field components expressions as function of the patch surface currents and of the incident field. Galerkin method is used to determine the unknown coefficients in the boundary value problem. Curves for the reflection coefficient of several reflectarray geometries are presented as function of frequency and of the structural parameters

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Spacecraft move with high speeds and suffer abrupt changes in acceleration. So, an onboard GPS receiver could calculate navigation solutions if the Doppler effect is taken into consideration during the satellite signals acquisition and tracking. Thus, for the receiver subject to such dynamic cope these shifts in the frequency signal, resulting from this effect, it is imperative to adjust its acquisition bandwidth and increase its tracking loop to a higher order. This paper presents the changes in the GPS Orion s software, an open architecture receiver produced by GEC Plessey Semiconductors, nowadays Zarlink, in order to make it able to generate navigation fix for vehicle under high dynamics, especially Low Earth Orbit satellites. GPS Architect development system, sold by the same company, supported the modifications. Furthermore, it presents GPS Monitor Aerospace s characteristics, a computational tool developed for monitoring navigation fix calculated by the GPS receiver, through graphics. Although it was not possible to simulate the software modifications implemented in the receiver in high dynamics, it was observed that the receiver worked in stationary tests, verified also in the new interface. This work also presents the results of GPS Receiver for Aerospace Applications experiment, achieved with the receiver s participation in a suborbital mission, Operation Maracati 2, in December 2010, using a digital second order carrier tracking loop. Despite an incident moments before the launch have hindered the effective navigation of the receiver, it was observed that the experiment worked properly, acquiring new satellites and tracking them during the VSB-30 rocket flight.

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Nowadays there has been a major breakthrough in the aerospace area, with regard to rocket launches to research, experiments, telemetry system, remote sensing, radar system (tracking and monitoring), satellite communications system and insertion of satellites in orbit. This work aims at the application of a circular cylindrical microstrip antenna, ring type, and other cylindrical rectangular in structure of a rocket or missile to obtain telemetry data, operating in the range of 2 to 4 GHz, in S-band. Throughout this was developed just the theoretical analysis of the Transverse transmission line method which is a method of rigorous analysis in spectral domain, for use in rockets and missiles. This analyzes the spread in the direction "ρ" , transverse to dielectric interfaces "z" and "φ", for cylindrical coordinates, thus taking the general equations of electromagnetic fields in function of e [1]. It is worth mentioning that in order to obtain results, simulations and analysis of the structure under study was used HFSS program (High Frequency Structural Simulator) that uses the finite element method. With the theory developed computational resources were used to obtain the numerical calculations, using Fortran Power Station, Scilab and Wolfram Mathematica ®. The prototype was built using, as a substrate, the ULTRALAM ® 3850, of Rogers Corporation, and an aluminum plate as a cylindrical structure used to support. The agreement between the measured and simulated results validate the established processes. Conclusions and suggestions are presented for continuing this work

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Recently, an amazing development has been observed in telecommunication systems. Two good examples of this development are observed in mobile communication and aerospace systems. This impressive development is related to the increasing need for receiving and transmitting communication signals. Particularly, this development has required the study of new antennas and filters. This work presents a fullwave analysis of reflectarrays. The considered structures are composed by arrays of rectangular conducting patches printed on multilayer dieletric substrates, that are mounted on a ground plane. The analysis is developed in the spectral domain, using an equivalent transmission line method in combination with Galerkin method. Results for the reflection coefficient of these structures are presented and compared to those available in the literature. A good agreement was observed. Particularly, the developed analysis uses the transmission lines theory in combination with the incident potentials and the field continuity equations, at the structures interfaces, for obtaining the scattered field components expressions as function of the patch surface currents and of the incident field. Galerkin method is used to determine the unknown coefficients in the boundary value problem. Curves for the reflection coefficient of several reflectarray geometries are presented as function of frequency and of the structural parameters

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Composite materials have a wide application in various sectors, such as the medical field in the manufacture of prostheses, in automotive and aerospace. Thus it is essential to the development of new composite and a better understanding in the face of various loading conditions and service. Several structural elements are manufactured in the presence of geometric discontinuity (notch, hole, etc ) in their longitudinal sections and/or cross-cutting, and these affect the mechanical response of these elements. The objective is to study the mechanical response of laminated polymer matrix hybrid composites reinforced with glass fiber/jute in a uniaxial tensile test. The mechanical response takes in account both the influence of the presence of a geometric discontinuity (semicircular notches) and the orientation of fibers in the layers (anisotropy). The semicircular notches are located in longitudinal section (with a reduction in cross section) of the same. In this analysis, the anisotropy is characterized by types of configurations (with different orientations of fibers in the outer layers). A comparative study of mechanical properties with and without the presence of notches is developed. Both configurations consist of four layers of woven jute fiber bidirectional and a central layer of bidirectional woven glass fibers. In addition to the mechanical properties was also studied the characteristics of the fracture developed in each composite laminate. The results showed that in the comparative study, the anisotropy and the presence of semicircular notches directly influences the mechanical behavior of laminates composites, mainly in reducing the tensile strength, and well as the final characteristics of the fracture

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Composites based on PEEK + PTFE + CARBON FIBER + Graphite (G_CFRP) has increased application in the top industries, as Aerospace, Aeronautical, Petroleum, Biomedical, Mechanical and Electronics Engineering challenges. A commercially available G_CFRP was warmed up to three different levels of thermal energy to identify the main damage mechanisms and some evidences for their intrinsic transitions. An experimental test rig for systematize a heat flux was developed in this dissertation, based on the Joule Effect. It was built using an isothermal container, an internal heat source and a real-time measurement system for test a sample by time. A standard conical-cylindrical tip was inserted into a soldering iron, commercially available and identified by three different levels of nominal electrical power, 40W (manufacturer A), 40W (manufacturer B), 100W and 150W, selected after screening tests: these power levels for the heat source, after one hour of heating and one hour of cooling in situ, carried out three different zones of degradation in the composite surface. The bench was instrumented with twelve thermocouples, a wattmeter and a video camera. The twelve specimens tested suffered different degradation mechanisms, analyzed by DSC (Differential Scanning Calorimetry) and TG (Thermogravimetry) techniques, Scanning Electron Microscopy (SEM) and Energy-Dispersive X-Rays (EDX) Analysis. Before and after each testing, it was measured the hardness of the sample by HRM (Hardness Rockwell M). Excellent correlations (R2=1) were obtained in the plots of the evaporated area after one hour of heating and one hour of cooling in situ versus (1) the respective power of heat source and (2) the central temperature of the sample. However, as resulting of the differential degradation of G_CFRP and their anisotropy, confirmed by their variable thermal properties, viscoelastic and plastic properties, there were both linear and non-linear behaviour between the temperature field and Rockwell M hardness measured in the radial and circumferential directions of the samples. Some morphological features of the damaged zones are presented and discussed, as, for example, the crazing and skeletonization mechanism of G_CFRP

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Materials denominated technical textiles can be defined as structures designed and developed with function to fulfill specific functional requirements of various industrial sectors as are the cases of the automotive and aerospace industries. In this aspect the technical textiles are distinguished from conventional textile materials, in which the aesthetic and of comfort needs are of primordial importance. Based on these considerations, the subject of this dissertation was established having as its main focus the study of development of textile structures from aramid and glass fibers and acting in order to develop the manufacture of composite materials that combine properties of two different structures, manufactured in an identical operation, where each structure contributes to improving the properties of the resulting composite material. Therefore were created in laboratory scale, textile structures with low weight and different composition: aramid (100%), glass (100%) and aramid /glass (65/35%), in order to use them as a reinforcing element in composite materials with polyester matrix. These composites were tested in tension and its fracture surface, evaluated by MEV. Based on the analysis of mechanical properties of the developed composites, the efficiency of the structures prepared as reinforcing element were testified by reason of that the resistance values of the composites are far superior to the polyester matrix. It was also observed that hybridization in tissue structure was efficient, since the best results obtained were for hybrid composites, where strength to the rupture was similar to the steel 1020, reaching values on the order of 340 MPa

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Concern for the environment and the exploitation of natural resources has motivated the development of research in lignocellulosic materials, mainly from plant fibers. The major attraction of these materials include the fact that the fibers are biodegradable, they are a renewable natural resource, low cost and they usually produce less wear on equipment manufacturing when compared with synthetic fibers. Its applications are focused on the areas of technology, including automotive, aerospace, marine, civil, among others, due to the advantageous use in economic and ecological terms. Therefore, this study aims to characterize and analyze the properties of plant fiber macambira (bromelia laciniosa), which were obtained in the municipality of Ielmo Marino, in the state of Rio Grande do Norte, located in the region of the Wasteland Potiguar. The characterization of the fiber is given by SEM analysis, tensile test, TG, FTIR, chemical analysis, in addition to obtaining his title and density. The results showed that the extraction of the fibers, only 0.5% of the material is converted into fibers. The results for title and density were satisfactory when compared with other fibers of the same nature. Its structure is composed of microfibrils and its surface is roughened. The cross section has a non-uniform geometry, therefore, it is understood that its diameter is variable along the entire fiber. Values for tensile strength were lower than those of sisal fibers and curauá. The degradation temperature remained equivalent to the degradation temperatures of other vegetable fibers. In FTIR analysis showed that the heat treatment may be an alternative to making the fiber hydrophobic, since, at high temperature can remove the hemicellulose layer, responsible for moisture absorption. Its chemical constitution is endowed with elements of polar nature, so their moisture is around 8.5% which is equivalent to the percentage of moisture content of hydrophilic fibers. It can be concluded that the fiber macambira stands as an alternative materials from renewable sources and depending on the actual application and purpose, it may achieve satisfactory results

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)